Human–machine coordination in mixed traffic as a problem of Meaningful Human Control
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[1] R. Bellamy. Republicanism , 2021, Routledge International Handbook of Contemporary Social and Political Theory.
[2] G. Mecacci,et al. Four Responsibility Gaps with Artificial Intelligence: Why they Matter and How to Address them , 2021, Philosophy & Technology.
[3] Bart van Arem,et al. Gaps in the Control of Automated Vehicles on Roads , 2020, IEEE Intelligent Transportation Systems Magazine.
[4] Frank Pasquale,et al. New Laws of Robotics , 2020 .
[5] Giulio Mecacci,et al. A Conceptual Control System Description of Cooperative and Automated Driving in Mixed Urban Traffic With Meaningful Human Control for Design and Evaluation , 2020, IEEE Open Journal of Intelligent Transportation Systems.
[6] Jean‐François Bonnefon,et al. Ethics of Connected and Automated Vehicles: Recommendations on road safety, privacy, fairness, explainability and responsibility , 2020 .
[7] Bart van Arem,et al. A human centric framework for the analysis of automated driving systems based on meaningful human control , 2019, Theoretical Issues in Ergonomics Science.
[8] G. Mecacci,et al. Meaningful human control as reason-responsiveness: the case of dual-mode vehicles , 2019, Ethics and Information Technology.
[9] F. Flemisch,et al. Special issue on shared and cooperative control , 2019, Cognition, Technology & Work.
[10] Keita Higuchi,et al. BBeep: A Sonic Collision Avoidance System for Blind Travellers and Nearby Pedestrians , 2019, CHI.
[11] Béatrice Cahour,et al. Using Sensory Wearable Devices to Navigate the City: Effectiveness and User Experience in Older Pedestrians , 2019, Multimodal Technol. Interact..
[12] Jilles Smids,et al. Automated cars meet human drivers: responsible human-robot coordination and the ethics of mixed traffic , 2018, Ethics and Information Technology.
[13] O. Carsten,et al. How can humans understand their automated cars? HMI principles, problems and solutions , 2019, Cognition, Technology & Work.
[14] Frank Flemisch,et al. Layers of shared and cooperative control, assistance, and automation , 2018, Cognition, Technology & Work.
[15] Serge P. Hoogendoorn,et al. Modelling decisions of control transitions and target speed regulations in full-range Adaptive Cruise Control based on Risk Allostasis Theory , 2018, Transportation Research Part B: Methodological.
[16] D. D. Heikoop,et al. Effects of mental demands on situation awareness during platooning: A driving simulator study , 2018, Transportation Research Part F: Traffic Psychology and Behaviour.
[17] Wulf Loh,et al. Autonomous Driving and Perverse Incentives , 2018, Philosophy & Technology.
[18] J. van den Hoven,et al. Meaningful Human Control over Autonomous Systems: A Philosophical Account , 2018, Frontiers in robotics and AI.
[19] Jeroen van den Hoven,et al. Meaningful Human Control over Autonomous Systems: A Philosophical Account , 2018, Front. Robot. AI.
[20] Jack Stilgoe,et al. Machine learning, social learning and the governance of self-driving cars , 2017, Social studies of science.
[21] Haneen Farah,et al. WEpod WElly in Delft : Pedestrians’ crossing behavior when interacting with automated vehicles using Virtual Reality , 2018 .
[22] James R. Sayer,et al. Driver Distraction: A Naturalistic Observation of Secondary Behaviors with the Use of Driver Assistance Systems , 2017 .
[23] F. S. D. Sio. Killing by Autonomous Vehicles and the Legal Doctrine of Necessity , 2017 .
[24] Taede Tillema,et al. Paths to a self-driving future : Five transition steps identified , 2017 .
[25] Filippo Santoni de Sio. Killing by Autonomous Vehicles and the Legal Doctrine of Necessity , 2017, Ethical Theory and Moral Practice.
[26] Neville A. Stanton,et al. Takeover Time in Highly Automated Vehicles: Noncritical Transitions to and From Manual Control , 2017, Hum. Factors.
[27] Haneen Farah,et al. Interactions between vulnerable road users and automated vehicles: A synthesis of literature and framework for future research , 2017 .
[28] I. R. Wilmink,et al. Considering knowledge gaps for automated driving in conventional traffic , 2016 .
[29] John Danaher,et al. Robots, law and the retribution gap , 2016, Ethics and Information Technology.
[30] Adam Millard-Ball,et al. Pedestrians, Autonomous Vehicles, and Cities , 2016 .
[31] Pim Haselager,et al. Warning signals for poor performance improve human-robot interaction , 2016 .
[32] Ingo Wolf. The Interaction Between Humans and Autonomous Agents , 2016 .
[33] J. Smids. The Moral Case for Intelligent Speed Adaptation , 2016 .
[34] Natasha Merat,et al. Driver Inattention During Vehicle Automation: How Does Driver Engagement Affect Resumption Of Control? , 2015 .
[35] Kathrin Zeeb,et al. What determines the take-over time? An integrated model approach of driver take-over after automated driving. , 2015, Accident; analysis and prevention.
[36] R. J. van Loon,et al. Automated Driving and its Effect on the Safety Ecosystem: How do Compatibility Issues Affect the Transition Period?☆ , 2015 .
[37] Natasha Merat,et al. Transition to manual: driver behaviour when resuming control from a highly automated vehicle , 2014 .
[38] Paul M. Salmon,et al. Missing links? The effects of distraction on driver situation awareness , 2013 .
[39] J. Hoven. Value Sensitive Design and Responsible Innovation , 2013 .
[40] Gert-Jan C. Lokhorst,et al. Engineering and the Problem of Moral Overload , 2011, Sci. Eng. Ethics.
[41] Kilian G. Seeber. Cognitive load in simultaneous interpreting: Existing theories — new models , 2011 .
[42] Magnus Egerstedt,et al. Autonomous driving in urban environments: approaches, lessons and challenges , 2010, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[43] Matthew M. Botvinick,et al. Anticipation of cognitive demand during decision-making , 2009, Psychological research.
[44] John D. Lee,et al. Driver Distraction : Theory, Effects, and Mitigation , 2008 .
[45] Iris van Rooij,et al. A lazy brain? Embodied embedded cognition and cognitive neuroscience , 2008 .
[46] Andreas Matthias,et al. The responsibility gap: Ascribing responsibility for the actions of learning automata , 2004, Ethics and Information Technology.
[47] Raja Parasuraman,et al. Humans and Automation: Use, Misuse, Disuse, Abuse , 1997, Hum. Factors.
[48] Philip Pettit,et al. Republicanism: A Theory of Freedom and Government , 1997 .
[49] Neville A. Stanton,et al. From fly-by-wire to drive-by-wire: Safety implications of automation in vehicles , 1996 .
[50] J. Reiman. Driving to the Panopticon: A Philosophical Exploration of the Risks to Privacy Posed by the Highway Technology of the Future , 1995 .
[51] Leonard Evans,et al. Human behavior and traffic safety , 2011 .
[52] J. Raz. Reasons for Action, Decisions and Norms , 1975 .